Grid-Connected, Data-Driven Inverter Control, Theory to Hardware

Fuente: arXiv
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Hauptverfasser: Graf, Sebastian, Moffat, Keith, Mohapatra, Anurag, Chiuso, Alessandro, Dörfler, Florian
Format: Preprint
Veröffentlicht: 2025
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author Graf, Sebastian
Moffat, Keith
Mohapatra, Anurag
Chiuso, Alessandro
Dörfler, Florian
author_facet Graf, Sebastian
Moffat, Keith
Mohapatra, Anurag
Chiuso, Alessandro
Dörfler, Florian
contents Grid-connected inverter control is challenging to implement due to the difficulty of obtaining and maintaining an accurate grid model. Direct Data-Driven Predictive Control provides a model-free alternative to traditional model-based control methods. This paper describes how the recently-proposed Transient Predictive Control (TPC) can be used for real-world, plug-and-play inverter control. The following hypotheses were tested: 1) The TPC algorithm can be run online using standard hardware, and 2) TPC, which is derived using Linear Time-Invariant assumptions, is effective for grid-connected inverter control, which is a nonlinear and time-varying system. Experiments conducted on a two-converter benchtop setup and at the CoSES Laboratory on a 25 kVA converter connected to the Munich grid support these hypotheses.
format Preprint
id arxiv_https___arxiv_org_abs_2507_02325
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Grid-Connected, Data-Driven Inverter Control, Theory to Hardware
Graf, Sebastian
Moffat, Keith
Mohapatra, Anurag
Chiuso, Alessandro
Dörfler, Florian
Systems and Control
Grid-connected inverter control is challenging to implement due to the difficulty of obtaining and maintaining an accurate grid model. Direct Data-Driven Predictive Control provides a model-free alternative to traditional model-based control methods. This paper describes how the recently-proposed Transient Predictive Control (TPC) can be used for real-world, plug-and-play inverter control. The following hypotheses were tested: 1) The TPC algorithm can be run online using standard hardware, and 2) TPC, which is derived using Linear Time-Invariant assumptions, is effective for grid-connected inverter control, which is a nonlinear and time-varying system. Experiments conducted on a two-converter benchtop setup and at the CoSES Laboratory on a 25 kVA converter connected to the Munich grid support these hypotheses.
title Grid-Connected, Data-Driven Inverter Control, Theory to Hardware
topic Systems and Control
url https://arxiv.org/abs/2507.02325